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Optimal Estimation in Networked Control Systems Subject to Random Delay and Packet Drop

机译:随机延迟和丢包情况下网络控制系统的最优估计

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In this note, we study optimal estimation design for sampled linear systems where the sensors measurements are transmitted to the estimator site via a generic digital communication network. Sensor measurements are subject to random delay or might even be completely lost. We show that the minimum error covariance estimator is time-varying, stochastic, and it does not converge to a steady state. Moreover, the architecture of this estimator is independent of the communication protocol and can be implemented using a finite memory buffer if the delivered packets have a finite maximum delay. We also present two alternative estimator architectures that are more computationally efficient and provide upper and lower bounds for the performance of the time-varying estimator. The stability of these estimators does not depend on packet delay but only on the overall packet loss probability. Finally, algorithms to compute critical packet loss probability and estimators performance in terms of their error covariance are given and applied to some numerical examples.
机译:在本文中,我们研究了采样线性系统的最佳估计设计,在该系统中,传感器的测量值通过通用的数字通信网络传输到估计器站点。传感器的测量会受到随机延迟的影响,甚至可能完全丢失。我们表明最小误差协方差估计量是随时间变化的,随机的,并且不会收敛到稳态。此外,该估计器的体系结构与通信协议无关,如果传递的数据包具有有限的最大延迟,则可以使用有限的存储缓冲区来实现。我们还提出了两种替代的估算器体系结构,它们的计算效率更高,并且为时变估算器的性能提供了上限和下限。这些估计器的稳定性不取决于分组延迟,而仅取决于整体分组丢失概率。最后,给出了计算关键包丢失概率和估计器性能(根据其误差协方差)的算法,并将其应用于一些数值示例。

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